Cold Dust Emission from X-ray AGN in the SCUBA-2 Cosmology Legacy Survey: Dependence on Luminosity, Obscuration & AGN Activity
Manda Banerji (IoA/KICC Cambridge), R. G. McMahon, C. J. Willott, J., E. Geach, C. M. Harrison, S. Alaghband-Zadeh, D. M. Alexander, N. Bourne, K., E. K. Coppin, J. S. Dunlop, D. Farrah, M. Jarvis, M. J.Michalowski, M. Page,, D. J. B. Smith, A. M. Swinbank, M. Symeonidis

TL;DR
This study investigates the cold dust emission in X-ray selected AGN across a wide redshift and luminosity range, revealing no evolution with redshift but differences based on AGN type and luminosity, and comparing AGN with non-AGN galaxies.
Contribution
It provides new insights into the dependence of cold dust emission on AGN properties and evolutionary stage using SCUBA-2 data in the COSMOS field.
Findings
Significant stacked 850um detection of high-redshift X-ray AGN.
No evolution in dust emission over the redshift range 0.7<z<3.5.
Higher submm flux in high-luminosity Type 2 AGN compared to Type 1.
Abstract
We study the 850um emission in X-ray selected AGN in the 2 sq-deg COSMOS field using new data from the SCUBA-2 Cosmology Legacy Survey. We find 19 850um bright X-ray AGN in a high-sensitivity region covering 0.89 sq-deg with flux densities of S850=4-10 mJy. The 19 AGN span the full range in redshift and hard X-ray luminosity covered by the sample - 0.7<z<3.5 and 43.2<log10(LX) <45. We report a highly significant stacked 850um detection of a hard X-ray flux-limited population of 699 z>1 X-ray AGN - S850=0.71+/-0.08mJy. We explore trends in the stacked 850um flux densities with redshift, finding no evolution in the average cold dust emission over the redshift range probed. For Type 1 AGN, there is no significant correlation between the stacked 850um flux and hard X-ray luminosity. However, in Type 2 AGN the stacked submm flux is a factor of 2 higher at high luminosities. When averaging…
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